Multiparametric Monitoring System of Mt. Melbourne Volcano (Victoria Land, Antarctica)

Author:

Larocca Graziano1,Contrafatto Danilo1,Cannata Andrea12ORCID,Giudice Gaetano1ORCID

Affiliation:

1. Istituto Nazionale di Geofisica e Vulcanologia, Osservatorio Etneo, Piazza Roma 2, 95123 Catania, Italy

2. Dipartimento di Scienze Biologiche, Geologiche e Ambientali-Sezione di Scienze della Terra, Università degli Studi di Catania, Corso Italia 57, 95129 Catania, Italy

Abstract

Volcano monitoring is the key approach in mitigating the risks associated with volcanic phenomena. Although Antarctic volcanoes are characterized by remoteness, the 2010 Eyjafjallajökull eruption and the 2022 Hunga eruption have reminded us that even the farthest and/or least-known volcanoes can pose significant hazards to large and distant communities. Hence, it is important to also develop monitoring systems in the Antarctic volcanoes, which involves installing and maintaining multiparametric instrument networks. These tasks are particularly challenging in polar regions as the instruments have to face the most extreme climate on the Earth, characterized by very low temperatures and strong winds. In this work, we describe the multiparametric monitoring system recently deployed on the Melbourne volcano (Victoria Land, Antarctica), consisting of seismic, geochemical and thermal sensors together with powering, transmission and acquisition systems. Particular strategies have been applied to make the monitoring stations efficient despite the extreme weather conditions. Fumarolic ice caves, located on the summit area of the Melbourne volcano, were chosen as installation sites as they are protected places where no storm can damage the instruments and temperatures are close to 0 °C all year round. In addition, the choice of instruments and their operating mode has also been driven by the necessity to reduce energy consumption. Indeed, one of the most complicated tasks in Antarctica is powering a remote instrument year-round. The technological solutions found to implement the monitoring system of the Melbourne volcano and described in this work can help create volcano monitoring infrastructures in other polar environments.

Funder

ICE-VOLC

MIMIC

I-VOLCAN

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference45 articles.

1. Volcanic hazards and their mitigation: Progress and problems;Tilling;Rev. Geophys.,1989

2. Pallister, J., and McNutt, S.R. (2015). The Encyclopedia of Volcanoes, Academic Press.

3. Scarpa, R., and Tilling, R.I. (1996). Monitoring and Mitigation of Volcano Hazards, Springer.

4. Poland, M. (2015). Global Volcanic Hazards and Risk, Cambridge University Press.

5. Willis, M.J. (2008). Geodetic and Geophysical Observations in Antarctica, Springer.

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